Objective To investigate the mechanism of capsaicin in treating active psoriasis vulgaris.Methods A total of 42 patients with active psoriasis vulgaris diagnosed by histology and clinical features were given either pl...Objective To investigate the mechanism of capsaicin in treating active psoriasis vulgaris.Methods A total of 42 patients with active psoriasis vulgaris diagnosed by histology and clinical features were given either placebo or 0.025% capsaicin ointment four times daily for 30 days randomly by double-blind method.Vasoactive intestinal polypeptide receptor 1(VIPR1)gene translation in active psoriatic lesions before and after treatment with capsaicin ointment was detected by in situ hybridization.Results There was positive staining of VIPR1 gene in all the layers of psoriatic epidermis(95.5%)before the treatment with capsaicin ointment,but nearly no dyeing in epidermis(18.2%)after the treatment for 30 days.There was nearly no brown staining before and after treatment in control group.Conclusion VIPR1 gene translation in psoriatic epidermis is down-regulated after capsaicin treatment for 30 days.展开更多
The transient receptor potential cation channel subfamily V member 1(TRPV1) provides the sensation of pain(nociception). However, it remains unknown whether TRPV1 is activated after peripheral nerve injury, or whe...The transient receptor potential cation channel subfamily V member 1(TRPV1) provides the sensation of pain(nociception). However, it remains unknown whether TRPV1 is activated after peripheral nerve injury, or whether activation of TRPV1 affects neural regeneration. In the present study, we established rat models of unilateral sciatic nerve crush injury, with or without pretreatment with AMG517(300 mg/kg), a TRPV1 antagonist, injected subcutaneously into the ipsilateral paw 60 minutes before injury. At 1 and 2 weeks after injury, we performed immunofluorescence staining of the sciatic nerve at the center of injury, at 0.3 cm proximal and distal to the injury site, and in the dorsal root ganglia. Our results showed that Wallerian degeneration occurred distal to the injury site, and neurite outgrowth and Schwann cell regeneration occurred proximal to the injury. The number of regenerating myelinated and unmyelinated nerve clusters was greater in the AMG517-pretreated rats than in the vehicle-treated group, most notably 2 weeks after injury. TRPV1 expression in the injured sciatic nerve and ipsilateral dorsal root ganglia was markedly greater than on the contralateral side. Pretreatment with AMG517 blocked this effect. These data indicate that TRPV1 is activated or overexpressed after sciatic nerve crush injury, and that blockade of TRPV1 may accelerate regeneration of the injured sciatic nerve.展开更多
Introduction: It has been documented that mammalian ovaries receive sympathetic, parasympathetic and sensory nerve fibers. The aim of this work was to investigate the effects of sensory denervation with capsaicin at t...Introduction: It has been documented that mammalian ovaries receive sympathetic, parasympathetic and sensory nerve fibers. The aim of this work was to investigate the effects of sensory denervation with capsaicin at the first vaginal opening (FVO) on follicular development and the expression of TRPV1 receptors in ovary cells as well as in the dorsal root ganglia (DRGs) and lumbar dorsal spinal cord neurons of guinea pigs. The DRGs and lumbar dorsal spinal cord neurons serve as a nerve connection from the ovaries to the CNS. Materials and Methods: Female guinea pigs received a subcutaneous injection of capsaicin (30 mM) at 10 days of age (P10), while control animals were injected with vehicle. Using light microscopy, we counted healthy preantral follicles (HPF), healthy antral follicles (HAF), atretic preantral follicles (APF), and atretic antral follicles (AAF) in the ovaries at the FVO, and the numbers of TRPV1-positive cells were counted in the ovarian follicles, DRGs, and lumbar dorsal spinal cord (L2-L4) neurons by immunohistochemistry. Results: Guinea pigs treated with capsaicin showed a significant delay of FVO in comparison with the control animals (36 vs. 44 days). In the ovaries, the number of preantral and antral follicles decreased significantly. Additionally, the number of TRPV1-positive thecainterstitial cells of the antral follicles was reduced significantly, and the number of TRPV1-positive neurons in the DRGs and lumbar dorsal spinal cord (L2-L4) decreased. Thus, we showed that TRPV1 receptors throughout the sensory fibers modulate ovarian follicular development and the onset of puberty in guinea pigs. Conclusion: Sensory denervation decreases ovarian follicular development and delays the onset of puberty of guinea pigs. Our data support the idea that through TRPV1 receptors, ovarian afferent fibers sense local stimuli that are sent to the CNS.展开更多
In order to investigate the secretion mechanism of denervated submandibular gland(SMG) and artificially regulate the secretion of transferred SMG,serial studies on the secretion function of normal and transferred SM...In order to investigate the secretion mechanism of denervated submandibular gland(SMG) and artificially regulate the secretion of transferred SMG,serial studies on the secretion function of normal and transferred SMG have been performed. The results showed that functional α 1A- and α 1B-adrenoceptors(AR) were expressed in human SMG, and might contribute to the regulation of saliva synthesis and secretion. Both β1- and β2-AR were expressed in rabbit SMG. β1-AR was the predominant subtype and might play an important role in regulating saliva and α-amylase secretion. Vanilloid receptor1(VR1) mRNA and protein were detected in rabbit SMG. Capsaicin could induce a significant increase in secretion of rabbit SMG via activitation of VR1. On the rabbit model of microvascular transfer of SMG, phenylephrine(10 -7 mol/L)was infused into SMG through the Wharton’s duct. The secretion of transferred SMG was significantly increased without significant changes of cardiovascular function. The effective mechanism of phenylephrine might involve the increased expression of α1-AR, translocation of AQP5 from cytoplasm to apical membrane, activation of signal molecules related to cell proliferation, and moderate the atrophy of the gland. These results provided a experimental basis for deeply understanding of secretion mechanism of normal and transferred SMG, and effective regulation of secretion of the transferred SMG.展开更多
文摘Objective To investigate the mechanism of capsaicin in treating active psoriasis vulgaris.Methods A total of 42 patients with active psoriasis vulgaris diagnosed by histology and clinical features were given either placebo or 0.025% capsaicin ointment four times daily for 30 days randomly by double-blind method.Vasoactive intestinal polypeptide receptor 1(VIPR1)gene translation in active psoriatic lesions before and after treatment with capsaicin ointment was detected by in situ hybridization.Results There was positive staining of VIPR1 gene in all the layers of psoriatic epidermis(95.5%)before the treatment with capsaicin ointment,but nearly no dyeing in epidermis(18.2%)after the treatment for 30 days.There was nearly no brown staining before and after treatment in control group.Conclusion VIPR1 gene translation in psoriatic epidermis is down-regulated after capsaicin treatment for 30 days.
基金supported by the National Natural Science Foundation of China,No.81171178the Natural Science Foundation of Shanxi Province in China,No.2012011036-3Scientific Research Foundation of Shanxi Province of China for the Returned Overseas Chinese Scholars,No.2013011054-2
文摘The transient receptor potential cation channel subfamily V member 1(TRPV1) provides the sensation of pain(nociception). However, it remains unknown whether TRPV1 is activated after peripheral nerve injury, or whether activation of TRPV1 affects neural regeneration. In the present study, we established rat models of unilateral sciatic nerve crush injury, with or without pretreatment with AMG517(300 mg/kg), a TRPV1 antagonist, injected subcutaneously into the ipsilateral paw 60 minutes before injury. At 1 and 2 weeks after injury, we performed immunofluorescence staining of the sciatic nerve at the center of injury, at 0.3 cm proximal and distal to the injury site, and in the dorsal root ganglia. Our results showed that Wallerian degeneration occurred distal to the injury site, and neurite outgrowth and Schwann cell regeneration occurred proximal to the injury. The number of regenerating myelinated and unmyelinated nerve clusters was greater in the AMG517-pretreated rats than in the vehicle-treated group, most notably 2 weeks after injury. TRPV1 expression in the injured sciatic nerve and ipsilateral dorsal root ganglia was markedly greater than on the contralateral side. Pretreatment with AMG517 blocked this effect. These data indicate that TRPV1 is activated or overexpressed after sciatic nerve crush injury, and that blockade of TRPV1 may accelerate regeneration of the injured sciatic nerve.
文摘Introduction: It has been documented that mammalian ovaries receive sympathetic, parasympathetic and sensory nerve fibers. The aim of this work was to investigate the effects of sensory denervation with capsaicin at the first vaginal opening (FVO) on follicular development and the expression of TRPV1 receptors in ovary cells as well as in the dorsal root ganglia (DRGs) and lumbar dorsal spinal cord neurons of guinea pigs. The DRGs and lumbar dorsal spinal cord neurons serve as a nerve connection from the ovaries to the CNS. Materials and Methods: Female guinea pigs received a subcutaneous injection of capsaicin (30 mM) at 10 days of age (P10), while control animals were injected with vehicle. Using light microscopy, we counted healthy preantral follicles (HPF), healthy antral follicles (HAF), atretic preantral follicles (APF), and atretic antral follicles (AAF) in the ovaries at the FVO, and the numbers of TRPV1-positive cells were counted in the ovarian follicles, DRGs, and lumbar dorsal spinal cord (L2-L4) neurons by immunohistochemistry. Results: Guinea pigs treated with capsaicin showed a significant delay of FVO in comparison with the control animals (36 vs. 44 days). In the ovaries, the number of preantral and antral follicles decreased significantly. Additionally, the number of TRPV1-positive thecainterstitial cells of the antral follicles was reduced significantly, and the number of TRPV1-positive neurons in the DRGs and lumbar dorsal spinal cord (L2-L4) decreased. Thus, we showed that TRPV1 receptors throughout the sensory fibers modulate ovarian follicular development and the onset of puberty in guinea pigs. Conclusion: Sensory denervation decreases ovarian follicular development and delays the onset of puberty of guinea pigs. Our data support the idea that through TRPV1 receptors, ovarian afferent fibers sense local stimuli that are sent to the CNS.
文摘In order to investigate the secretion mechanism of denervated submandibular gland(SMG) and artificially regulate the secretion of transferred SMG,serial studies on the secretion function of normal and transferred SMG have been performed. The results showed that functional α 1A- and α 1B-adrenoceptors(AR) were expressed in human SMG, and might contribute to the regulation of saliva synthesis and secretion. Both β1- and β2-AR were expressed in rabbit SMG. β1-AR was the predominant subtype and might play an important role in regulating saliva and α-amylase secretion. Vanilloid receptor1(VR1) mRNA and protein were detected in rabbit SMG. Capsaicin could induce a significant increase in secretion of rabbit SMG via activitation of VR1. On the rabbit model of microvascular transfer of SMG, phenylephrine(10 -7 mol/L)was infused into SMG through the Wharton’s duct. The secretion of transferred SMG was significantly increased without significant changes of cardiovascular function. The effective mechanism of phenylephrine might involve the increased expression of α1-AR, translocation of AQP5 from cytoplasm to apical membrane, activation of signal molecules related to cell proliferation, and moderate the atrophy of the gland. These results provided a experimental basis for deeply understanding of secretion mechanism of normal and transferred SMG, and effective regulation of secretion of the transferred SMG.